The effect of ultrasound exposure on the transformation efficiency of Escherichia coli HB101

Q2 Agricultural and Biological Sciences Bioscience Horizons Pub Date : 2010-06-01 DOI:10.1093/BIOHORIZONS/HZQ018
K. Hayer
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引用次数: 12

Abstract

Transformation is an important tool in modern genetic engineering and artificial methods exist to induce transformation in bacteria. Ultrasound offers the potential advantage of being versatile and less dependent on cell types than traditional methods like electroporation. This study investigated the effect of low-frequency ultrasound exposure on the ability of Escherichia coli (E. coli) to undergo transformation. E. coli HB101 in the presence of pBR322 plasmid was exposed to ultrasound frequencies of 48 kHz for 10-1200 s and monitored over a 24 and 48 h period. The most effective transformation efficiency (148.72 transformants μg −1 of DNA) was observed at 10 s exposure to ultrasound and after 24 h incubation. The ultrasound method was compared with the calcium chloride (CaCl 2 ) method of inducing artificial competence. There was a significant difference between 0.05 mM CaCl 2 induced transformation (4.70 transformants μg −1 of DNA) and 10 s exposure to ultrasound transformation (148.72 transformants μg −1 of DNA) after 24 h incubation. This study highlights the potential of ultrasound as a realistic alternative to induce competence for the genetic manipulation of bacteria.
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超声暴露对大肠杆菌HB101转化效率的影响
转化是现代基因工程的重要手段,目前存在人工诱导细菌转化的方法。与电穿孔等传统方法相比,超声波具有多功能和较少依赖细胞类型的潜在优势。本研究探讨了低频超声暴露对大肠杆菌(E. coli)转化能力的影响。将存在pBR322质粒的大肠杆菌HB101暴露在48 kHz的超声频率下10-1200 s,并在24和48 h期间进行监测。在超声作用10 s和孵育24 h时,转化效率最高(148.72个转化子μg - 1)。将超声法与氯化钙诱导人工能力法进行比较。孵育24 h后,0.05 mM氯化钙诱导转化(4.70个转化子μg−1)与超声转化10 s(148.72个转化子μg−1)差异显著。这项研究强调了超声波作为诱导细菌基因操作能力的现实替代方案的潜力。
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来源期刊
Bioscience Horizons
Bioscience Horizons Agricultural and Biological Sciences-Agricultural and Biological Sciences (all)
CiteScore
1.50
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0.00%
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